Journal of Modern Classical Physics & Quantum Neuroscience

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The Law of Viscous Resistance in Quantum-Crystalline Medium: A Unified Mechanical Framework for Solving Astrometric Anomalies and Cosmological Tension

Authors: Evgenii R Zolottcev
Published: 2026-01-30
Pages: 1-4
DOI: 10.63721/26JPQN0151
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Abstract

This paper presents a fundamental extension to the classical equations of motion by introducing a non-ide al fluid dynamics model of the vacuum. Standing on the shoulders of preceding frameworks from Einstein’s geometric curvature to Sakharov’s vacuum elasticity this study complements the existing gravitational paradigm with the Vacuum Viscous Stress Tensor (VVST). It is demonstrated that a viscous Quantum-Crystalline (QC) substrate, characterized by a dynamic viscosity ηqc ≈ 1.2 × 10−12 kg · m−1 · s−1, provides a deterministic solution to the Pioneer 10/11 anomalous deceleration and Earth Flyby velocity shifts. This unified approach suggests that certain phenomena attributed to dark matter can be reinterpreted as manifestations of medi um-dependent dissipation and inertial resistance within the Z-thickness gradient.

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© 2026 The Author(s). Published by WM Journals.

This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits unrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.

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